METHODS OF NON-CONTACT PARAMETRIC CONTROL OF EQUIPMENT OF BREWING APPARATUS AND WASTE WATER SAMPLES

Vadim Sebko, Yevgeny Pyrozhenko, Valeriy Zdorenko, Tatiana Novozhilova, Dmytro Nechiporenko
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Abstract

The studies of technoecology problems in the field of brewing established the need to predict the condition of equipment, the quality of semi-finished products, as well as the creation of algorithms for extracting and processing information on quality indicators. The necessity of developing new effective methods for monitoring brewing equipment, semi-finished products, finished products and the state of stock water samples has been proved. Thanks to this, it will become possible to determine the reasons for the deviation of the product characteristics from the set quality indicators and to take measures for appropriate adjustment. Experimental studies have confirmed that, thanks to the allocation of important informative parameters, it becomes possible to increase the overall component of the reliability of control.This leads to an increase in the quality of the finished product. In particular, it was found that due to the hardware techniques associated with heating the sample during the control process and compensating for the influence of the parasitic magnetic flux, it becomes possible to carry out joint control of quantitative parameters that are related to the physicomechanical properties of equipment parts, assemblies and designs of the beer column. The latter, in particular, relates to the implementation of joint control of the geometric, electrical and temperature parameters of parts of brewing equipment.Thus, there is reason to argue about the prospects of further research in the creation of automated computer systems for monitoring the electrical and temperature characteristics of semi-finished brewing products when implementing new informative methods.
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酿造设备及废水样品的非接触参数控制方法
对酿造领域技术生态学问题的研究确定了预测设备状况、半成品质量以及创建提取和处理质量指标信息的算法的需要。证明了开发新的有效方法对酿酒设备、半成品、成品和库存水样状态进行监测的必要性。这样,就可以确定产品特性偏离既定质量指标的原因,并采取适当的调整措施。实验研究证实,由于重要信息参数的分配,有可能增加控制的整体可靠性。这导致了成品质量的提高。特别是,研究发现,由于在控制过程中加热样品和补偿寄生磁通影响的硬件技术,可以对与设备部件、组件和啤酒塔设计的物理力学性能相关的定量参数进行联合控制。后者特别涉及对酿造设备部件的几何、电气和温度参数进行联合控制的实施。因此,在实施新的信息方法时,有理由争论在创建自动化计算机系统以监测半成品酿造产品的电气和温度特性方面进一步研究的前景。
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